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J Dunlop

Publications and source records attributed to J Dunlop.

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Sulphur-containing excitatory amino acid-evoked Ca(2+)-independent release of D-[3H]aspartate from cultured cerebellar granule cells: the role of glutamate receptor activation coupled to reversal of the acidic amino acid plasma membrane carrier.

Sulphur-containing excitatory amino acid transmitter candidates (500 microM) stimulated the Ca(2+)-independent efflux of exogenously-supplied D-[3H]aspartate from primary cultures of cerebellar granule cells superfused continuously with HEPES-buffered saline containing CoCl2 (1 mM) in place of CaCl2. The stimulated release of D-[3H]aspartate was markedly attenuated by 200 microM 6,7-dinitroquinoxalinedione, a concentration at which the antagonist inhibits both non-N-methyl-D-aspartate and N-methyl-D-aspartate ionotropic excitatory amino acid receptors. The Ca(2+)-independent component of evoked release was also markedly attenuated and, in some cases, abolished by removing NaCl from the superfusion medium. Furthermore, when 700 microM dihydrokainate (demonstrated herein as a mixed/non-competitive inhibitor of the high-affinity dicarboxylic amino acid transporter in cultured granule cells) was included in the superfusion medium, stimulated efflux of D-[3H]aspartate was reduced by between 15-78% of the control response; the extent of inhibition varying with the agonist employed. In constrast, agents which act as competitive inhibitors of the plasma membrane carrier in granule cells, e.g. beta-methylene-D,L-aspartate, potentiated the release of D-[3H]aspartate in a synergistic manner. Taken together, these findings are consistent with a mechanism for the Ca(2+)-independent release of D-[3H]aspartate that is mediated predominantly by activation of excitatory amino acid receptors resulting in a reversal of the high-affinity dicarboxylic amino acid transport system. Although the physiological relevance of such non-vesicular release from the cytosol remains obscure and is still a matter of some debate, this mode of release may be of pathological significance.

Animals

Glutamate uptake into synaptic vesicles--inhibition by sulphur amino acids.

In an attempt to investigate the apparent absolute selectivity of the synaptic vesicle L-glutamate carrier, L- and D-enantiomers of excitatory sulphur-containing amino acid (SAA) transmitter candidates (which are close structural analogues of L-glutamate) were tested for their capacity to compete for vesicular L-[3H]-glutamate uptake. All SAAs inhibited, to varying degrees (52-86%), the vesicular uptake of L-[3H]-glutamate. A similar level of inhibition was exerted by SAAs with either a shorter or equal carbon chain length to L-glutamate. Moreover, inhibition was stereospecific in favour of the D-enantiomers. These studies indicate an appreciable interaction of the SAAs with the recognition site of the vesicular L-glutamate carrier. Further investigations are required to establish the substrate potential of the SAAs.

Animals

Stimulation of gamma-[3H]aminobutyric acid release from cultured mouse cerebral cortex neurons by sulphur-containing excitatory amino acid transmitter candidates: receptor activation mediates two distinct mechanisms of release.

In primary cultures of mouse cerebral cortex neurons, sulphur-containing excitatory amino acids (SAAs; namely, L-cysteine sulphinate, L-cysteate, L-homocysteine sulphinate, L-homocysteate, S-sulphocysteine) at concentrations ranging from 0.1 microM to 1 mM evoked a saturable release of gamma-[3H]aminobutyric acid ([3H]GABA) in the absence of any other depolarizing agent. All SAAs exhibited essentially similar potency (EC50, 100-150 microM) in releasing [3H]GABA although a variable profile of maximal stimulatory effect was observed when compared with basal release. The intracellular accumulation of the lipophilic cation, [3H]tetraphenylphosphonium, was significantly reduced in the presence of all SAAs, thus verifying a depolarization of the neuronal plasma membrane. SAA-stimulated release of [3H]GABA was shown to comprise two distinct components, calcium-dependent and calcium-independent, which occur after activation of N-methyl-D-aspartate (NMDA) and non-NMDA receptors. Thus, all SAA-evoked responses were antagonized by the selective, competitive NMDA-receptor antagonist, 3-[(+/-)-2-carboxypiperazin-4-yl]propyl-1-phosphonic acid (IC50 range, greater than 50 microM) and the non-NMDA-receptor antagonist, 6,7-dinitroquinoxalinedione (IC50 range, 5-50 microM). Removal of magnesium ions from the superfusion medium caused a significant potentiation of SAA-evoked responses without having any effect on basal levels of [3H]GABA efflux, a result consistent with an involvement of NMDA-receptor activation. Calcium-independent release (i.e., that release remaining in the presence of 1 mM cobalt ions) was a distinct component but of smaller magnitude. Using 500 microM excitatory amino acid agonist concentrations, this component of release was (1) markedly attenuated by 15 microM SKF-89976-A, a non-transportable inhibitor of the GABA carrier, and (2) abolished when choline ions replaced sodium ions in the superfusion medium or when in the presence of excitatory amino acid receptor antagonists. These observations are clearly consistent with a receptor-mediated, depolarization-induced reversal of the GABA carrier.

Amino Acids

Parathyroid hormone-related protein: immunohistochemical localization in cancers and in normal skin.

An immunoperoxidase method has been developed to detect parathyroid hormone-related protein (PTHrP) in histological specimens of tumors and of normal skin. A rabbit polyclonal antiserum against PTHrP-(1-16) was used that did not cross-react with PTH-(1-34) either under radioimmunoassay conditions or at the high antiserum concentrations used in neutralizing biologic activity. PTHrP antigen was detected in the keratinocyte layer of normal skin and in 100% of 34 samples of squamous cell cancers but in only one of six breast cancers, and none of 15 other adenocarcinomata. It was also detected in four of four samples of renal cortical carcinoma and two of two of melanoma, both of which can be associated with hypercalcemia, and three of three small cell carcinomata of the lung. Immunologic detection of PTHrP could be useful in the diagnosis of tumors of squamous cell origin, particularly in the cytological differentiation of lung cancers, where it may be of value in distinguishing between squamous cell and small cell carcinoma on the one hand and poorly differentiated adenocarcinoma on the other.

Humans

Inhibition by excitatory sulphur amino acids of the high-affinity L-glutamate transporter in synaptosomes and in primary cultures of cortical astrocytes and cerebellar neurons.

A detailed kinetic study of the inhibitory effects of L- and D-enantiomers of cysteate, cysteine sulphinate, homocysteine sulphinate, homocysteate, and S-sulpho-cysteine on the neuronal, astroglial and synaptosomal high-affinity glutamate transport system was undertaken. D-[3H] Aspartate was used as the transport substrate. Kinetic characterisation of uptake in the absence of sulphur compounds confirmed the high-affinity nature of the transport systems, the Michaelis constant (Km) for D-aspartate uptake being 6 microM, 21 microM and 84 microM, respectively, in rat brain cortical synaptosomes and primary cultures of mouse cerebellar granule cells and cortical astrocytes. In those cases where significant effects could be demonstrated, the nature of the inhibition was competitive irrespective of the neuronal versus glial systems. The rank order of inhibition was essentially similar in synaptosomes, neurons and astrocytes. Potent inhibition (Ki approximately Km) of transport in each system was exhibited by L-cysteate, and L- and D-cysteine sulphinate whereas substantially weaker inhibitory effects (Ki greater than 10-1000 times the appropriate Km value) were exhibited by the remaining sulphur amino acids. In general, inhibition: (i) was markedly stereospecific in favor of the L-enantiomers (except for cysteine sulphinate) and (ii) was found to decrease with increasing chain length. Computer-assisted molecular modelling studies, in which volume contour maps of the sulphur compounds were superimposed on those of D-aspartate and L-glutamate, demonstrated an order of inhibitory potency which was, qualitatively, in agreement with that obtained quantitatively by in vitro kinetic studies.

Amino Acids

Excitatory sulphur amino acid-evoked neurotransmitter release from rat brain synaptosome fractions.

The neuroactive sulphur-containing amino acids L-cysteate (CA), L-cysteine sulphinate (CSA), L-homocysteine sulphinate (HSA), S-sulpho-L-cysteine (SC) and L-homocysteate (HCA) evoked the release of previously accumulated D-[3H]aspartate from rat brain cerebrocortical and cerebellar synaptosome fractions in a manner that was wholly Ca2+-independent. However, analysis of endogenous release by hplc revealed the presence of both Ca2+-dependent and -independent component of L-glutamate release but only a Ca2+-independent component of L-aspartate release. CA, CSA, HSA and SC but not HCA evoked the release of previously accumulated [3H]GABA from synaptosome fractions by a mechanism shown to comprise both a Ca2+-dependent and -independent component. The specific antagonists of the N-methyl-D-aspartate (NMDA) receptor, 3-[(+/-)-2-carboxypiperazin-4-yl]propyl-l-phosphonic acid (CPP) and the relatively selective competitive quisqualate (QUIS)/kainate (KA) receptor antagonist, 6-cyano-7-dinitroquinoxalinedione (CNQX), were ineffective in blocking the excitatory sulphur amino acid-evoked release of either D-[3H]aspartate, [3H]GABA or of endogenous established transmitter amino acids.

Amino Acids

Neuroactive sulphur amino acids evoke a calcium-dependent transmitter release from cultured neurones that is sensitive to excitatory amino acid receptor antagonists.

A dose-dependent, saturable, and calcium-dependent release of gamma-[3H]aminobutyrate [( 3H]GABA) from cortical neurones and D-[3H]aspartate from cerebellar granule cells following stimulation by a range of L-enantiomers of neuroactive acidic sulphur amino acids has been demonstrated. Moreover, the sulphur amino acid-evoked release of the transmitter amino acids was found to be sensitive to the presence of both selective N-methyl-D-aspartate and quisqualate/kainate receptor antagonists. Following the recent demonstration of an endogenous location for several of the acidic sulphur amino acids and their excitotoxic involvement in several neuropathological states and coupled with the knowledge that many important CNS connections are still undefined as far as their excitatory transmitter or transmitters are concerned, the present findings are of immediate importance in the continued search for endogenous excitatory amino acid agonists in addition to glutamate and aspartate.

Amino Acids

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Copper distribution and reactivity in serum following administration of cuprous oxide to rats and guinea pigs.

Total serum copper levels produced by the administration of a single dose of cuprous oxide (500 mg/kg) both s.c. and orally to rats and guinea pigs are reported 1, 5, 7 and 24 h after administration, together with caeruloplasmin oxidase activities and changes in the sulphydryl group concentrations. The highest serum copper levels were obtained one hour after oral administration to the guinea pig. Both animal species exhibited increased serum copper levels after s.c. administration and this increase persisted for a longer time than after oral administration. Caeruloplasmin oxidase activity varied in a complex manner and sulphydryl group activity was significantly depressed in all cases except after s.c. administration to the guinea pig. The latter results must be treated cautiously since they may indicate interactions between copper and the test procedures. Analysis of serum fractions separated by electrophoresis indicated that the absorbed copper is mainly transported on albumin. The dissolution of cuprous oxide by amino acids and hydrochloric acid and the absorption of cuprous oxidcations of the results are discussed in terms of their relevance to pharmacological and clinical studies.

Absorption